Jin Yifeng, Khadka Daulat B, Cho Won-Jea
a College of Pharmacy and Research Institute of Drug Development , Chonnam National University , Gwangju , Republic of Korea.
Expert Opin Ther Pat. 2016;26(2):229-43. doi: 10.1517/13543776.2016.1118060. Epub 2015 Dec 4.
A number of plant-derived agents are used in many therapeutic areas. Berberine, an important protoberberine alkaloid, is present in a number of medicinal plants that have been widely used in traditional Chinese medicine for hundreds of years. Modern research has shown that berberine and its derivatives display several pharmacological effects through various mechanisms.
This review discusses recent and mostly Chinese patents that report the synthesis of berberine, berberine derivatives and berberine salts, and methods of preparation for formulations (traditional Chinese medicine) containing herbal components rich in berberine, along with their applications. The review covers several therapeutic effects of berberine, its derivatives and pharmaceutical formulations against cancer, obesity, diabetes, inflammation, atherosclerosis, Alzheimer's disease, rheumatoid arthritis and cardiovascular diseases. In addition, the mechanisms underlying the pharmacological effects are discussed.
Modification of the functional groups of berberine has a significant effect on the pharmacological activity. However, studies on altering the atoms and size of the berberine skeleton are rare. Thus, it may be beneficial to initiate a drug development program focused on inserting heterocyclic rings of different sizes into berberine. Furthermore, structural modification to improve the safety, efficacy and selectivity is necessary to promote the use of berberine-based drugs in clinical settings.
许多植物来源的药物被应用于众多治疗领域。黄连素是一种重要的原小檗碱型生物碱,存在于多种药用植物中,这些植物在传统中药中已被广泛使用数百年。现代研究表明,黄连素及其衍生物通过多种机制展现出多种药理作用。
本综述讨论了近期的专利,主要是中国专利,这些专利报道了黄连素、黄连素衍生物和黄连素盐的合成,以及含丰富黄连素草药成分的制剂(中药)的制备方法及其应用。该综述涵盖了黄连素及其衍生物和药物制剂对癌症、肥胖症、糖尿病、炎症、动脉粥样硬化、阿尔茨海默病、类风湿性关节炎和心血管疾病的多种治疗作用。此外,还讨论了这些药理作用背后的机制。
黄连素官能团的修饰对其药理活性有显著影响。然而,关于改变黄连素骨架的原子和大小的研究很少。因此,启动一个专注于将不同大小的杂环插入黄连素的药物研发项目可能会有益处。此外,进行结构修饰以提高安全性、有效性和选择性对于促进黄连素类药物在临床环境中的应用是必要的。